Numerical study of thermal environment of a greenhouse dedicated to amaranth seed cultivation

被引:7
|
作者
Serrano-Arellano, J. [1 ]
Gijon-Rivera, M. [2 ]
Chavez-Servin, J. L. [3 ]
de la Torre-Carbot, K. [3 ]
Xaman, J. [4 ]
Alvarez, G. [4 ]
Belman-Flores, J. M. [1 ]
机构
[1] Univ Guanajuato, Dept Ingn Mecan, Salamanca 36885, Gto, Mexico
[2] Inst Tecnol & Estudios Super Monterrey, Puebla 72453, Puebla, Mexico
[3] Univ Autonoma Queretaro, Fac Ciencias Nat, Queretaro 76320, Qro, Mexico
[4] CENIDET DGEST SEP, Ctr Nacl Invest & Desarrollo Tecnol, Cuernavaca 62490, Morelos, Mexico
关键词
Greenhouse; Thermal comfort; Turbulent convection; Solar radiation; COMPUTATIONAL FLUID-DYNAMICS; PERFORMANCE; CLIMATE; STORAGE; MODEL; MICROCLIMATE; VALIDATION; SYSTEMS;
D O I
10.1016/j.solener.2015.08.004
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
In this study we examined thermal behavior inside a polycarbonate plastic greenhouse located in Amazcala, Queretaro, Mexico, in which amaranth is grown. The size of the greenhouse is 9.0 m long and 3.0 m high. The height of the entry opening and the exit opening is 0.5 m and 1.0 m, respectively. We conducted the study with real dimensions in a turbulent flow regime. Thermal radiation exchange between internal surfaces is also considered. Two case studies were undertaken: one with an outside temperature characteristic of a typical day and the other with a temperature corresponding to an extremely hot day. We modified the location of the hot wall, which was westward, northward and eastward. In both case studies we analyzed the Reynolds number in a range of 0 <= Re <= 4 x 10(4). We found that low airflow velocity numbers through the entry point did not benefit the thermal environment. On the contrary, the increase in Re at numbers above 2 x 10(4) was reflected in unnecessary electricity consumption. In the case of extremely hot days in the region, with temperatures of 35 degrees C, greenhouse ventilation with air from outside was insufficient to obtain temperatures suitable for the crop. Therefore, under these conditions, we recommend lowering the temperature of the airflow before it is introduced into the greenhouse. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:536 / 548
页数:13
相关论文
共 50 条
  • [21] CFD modelling of the microclimate of a cultivated greenhouse: A validation study between experimental and numerical results
    Tigampo, Soumaila
    Kooli, Sami
    Ben Salah, Nizar
    Foudhil, Walid
    Errais, Reda
    Sambou, Vincent
    Ben Jabrallah, Sadok
    JOURNAL OF THERMAL ENGINEERING, 2023, 10 (01): : 1115 - 1129
  • [22] Numerical Simulation of the Thermal Behavior of a Traditional Greenhouse by Using the Theory of the Green's Functions
    Ben Younes, R.
    Ayeb, H.
    NUMERICAL HEAT TRANSFER PART A-APPLICATIONS, 2009, 56 (11) : 914 - 929
  • [23] Numerical investigation on thermal performance of a solar greenhouse with synergetic energy release of short- and long-term PCM storage
    Chen, Wei
    Zhou, Guobing
    SOLAR ENERGY, 2024, 269
  • [24] Persistence of chlorpyrifos, diazinon and dimethoate sprayed in the greenhouse environment during hydroponic cultivation of Gerbera
    Hatzilazarou, SP
    Charizopoulos, E
    Papadopoulou-Mourkidou, E
    Economou, AS
    AGRONOMY FOR SUSTAINABLE DEVELOPMENT, 2005, 25 (02) : 193 - 199
  • [25] Study on thermal property of a solar collector applied to solar greenhouse
    Wang, Jian
    Luo, Qianliang
    Cheng, Jieyu
    Qu, Mei
    Wang, Pingzhi
    Zhao, Shumei
    Xu, Heming
    Ma, Chengwei
    APPLIED THERMAL ENGINEERING, 2024, 244
  • [26] A numerical study of cucurbit cultivation in a greenhouse under direct solar radiation and equipped with a direct evaporative cooler in summer season
    Mardomakdeh, Sara Maleki
    Poshtiri, Amin Haghighi
    Farahani, Majid
    ENERGY, 2024, 292
  • [27] Experimental study on spatiotemporal variation patterns of thermal environment in the large-span insulated greenhouse
    Li, He
    Zong, Chengji
    Lu, Jiarui
    Zhao, Shumei
    Yang, Dongyan
    Song, Weitang
    APPLIED THERMAL ENGINEERING, 2025, 264
  • [28] Structural design and thermal performance simulation of shade roof of double-slope greenhouse for mushroom-vegetable cultivation
    Ma, Yunfei
    Li, Xinxing
    Fu, Zetian
    Zhang, Lingxian
    INTERNATIONAL JOURNAL OF AGRICULTURAL AND BIOLOGICAL ENGINEERING, 2019, 12 (03) : 126 - 133
  • [29] A study on thermal performance, thermal comfort in sleeping environment and solar energy contribution of solar Chinese Kang
    He, Wei
    Jiang, Q. Y.
    Ji, Jie
    Wei, Wei
    ENERGY AND BUILDINGS, 2013, 58 : 66 - 75
  • [30] Effect of heat mitigation strategies on thermal environment, thermal comfort, and walkability: A case study in Hong Kong
    Jia, Siqi
    Wang, Yuhong
    BUILDING AND ENVIRONMENT, 2021, 201